Devices, methods, and systems for infrastructure-less indoor navigation in a fire control system are described herein. One device includes a non-transitory computer readable medium having computer readable instructions stored thereon that are executable by a processor to receive a location of each of a plurality of smoke detectors of a facility, display the location of each of the plurality of smoke detectors in a building information model (BIM) on a user interface, wherein each respective one of the displayed plurality of smoke detectors represents a different smoke detector of the plurality of smoke detectors of the facility, receive a selection of a first displayed smoke detector of the plurality of displayed smoke detectors representing a first smoke detector of the plurality of smoke detectors of the facility, and guide a user to the location of the first smoke detector of the facility responsive to receiving the selection.
Legal claims defining the scope of protection, as filed with the USPTO.
1. A non-transitory computer readable medium having computer readable instructions stored thereon that are executable by a processor to: receive a location of each of a plurality of smoke detectors of a facility; display the location of each of the plurality of smoke detectors in a building information model (BIM) on a user interface, wherein each respective one of the displayed plurality of smoke detectors represents a different smoke detector of the facility, and wherein each respective one of the plurality of smoke detectors is displayed with a particular symbol, in a particular shade or color, and/or highlighted based on a status of that detector; receive a selection of a first displayed smoke detector of the plurality of displayed smoke detectors representing a first smoke detector of the plurality of smoke detectors of the facility; and guide, via at least one of a user interface and a speaker of a computing device, a user from the user's current location to the location of the first smoke detector of the facility responsive to receiving the selection.
2. The computer readable medium of claim 1 , wherein the instructions are executable by the processor to use geomagnetic positioning to guide the user to the location of the first smoke detector.
3. The computer readable medium of claim 1 , wherein the instructions are executable by the processor to use inertial positioning to guide the user to the location of the first smoke detector.
4. The computer readable medium of claim 1 , wherein the first displayed smoke detector is displayed in a particular color responsive to the first smoke detector of the facility having a properly functioning status.
5. The computer readable medium of claim 1 , wherein the first displayed smoke detector is displayed in a particular color responsive to the first smoke detector of the facility having a faulty status.
6. The computer readable medium of claim 1 , wherein the first displayed smoke detector is displayed in a particular color responsive to the first smoke detector of the facility having a triggered status.
7. The computer readable medium of claim 1 , wherein the first displayed smoke detector is displayed in a particular color responsive to the first smoke detector of the facility having a disabled status.
8. A method for infrastructure-less indoor navigation in a fire control system, comprising: receiving, by a computing device, a building information model (BIM) of a facility, a location of each of a plurality of smoke detectors in the facility, and a status of each of the plurality of smoke detectors in the facility; displaying, on a user interface of the computing device, the location and status of each of the plurality of smoke detectors in the building information model (BIM), wherein each respective one of the displayed plurality of smoke detectors represents a different smoke detector of the plurality of smoke detectors of the facility, and wherein each respective one of the plurality of smoke detectors is displayed with a particular symbol, in a particular shade or color, and/or highlighted based on a status of that detector; receiving a selection of a first displayed smoke detector of the plurality of displayed smoke detectors representing a first smoke detector of the plurality of smoke detectors of the facility; and guiding, via at least one of the user interface and a speaker of a computing device, a user from the user's current location to the location of the first smoke detector of the facility responsive to receiving the selection.
9. The method of claim 8 , wherein the facility is a global positioning system (GPS) denied environment.
10. The method of claim 8 , wherein the method includes receiving the status of each of the plurality of smoke detectors of the facility via near-field communication (NFC).
11. The method of claim 8 , wherein the method includes guiding the user to the location of the first smoke detector of the facility by displaying directions on the user interface.
12. The method of claim 8 , wherein the method includes guiding the user to the location of the first smoke detector of the facility by broadcasting directions via the speaker of the computing device.
13. The method of claim 8 , wherein the method includes guiding the user to the location of the first smoke detector by displaying a route on the user interface.
14. A system for infrastructure-less indoor navigation in a fire control system, comprising: a plurality of smoke detectors; a fire control panel; and a computing device configured to: receive a location of each of the plurality of smoke detectors from the fire control panel; display, on a user interface of the computing device, the location of each of the plurality of smoke detectors in a building information model (BIM), wherein each respective one of the displayed plurality of smoke detectors represents a different smoke detector of the plurality of smoke detectors, and wherein a first smoke detector of the plurality of smoke detectors has a fault and a first displayed smoke detector of the plurality of displayed smoke detectors representing the first smoke detector of the plurality of smoke detectors is displayed in a first color responsive to the first smoke detector having the fault; receive a first selection of the first displayed smoke detector of the plurality of displayed smoke detectors; and guide, via at least one of the user interface and a speaker of the computing device, a user from the user's current location to the location of the first smoke detector.
15. The system of claim 14 , wherein the computing device is further configured to display the first displayed smoke detector in a second color responsive to the first smoke detector of the facility properly functioning.
16. The system of claim 14 , wherein the computing device is further configured to receive a selection of a second displayed smoke detector of the plurality of displayed smoke detectors representing a second smoke detector of the facility.
17. The system of claim 16 , wherein the computing device is configured to guide the user to the location of the second smoke detector responsive to receiving the selection of the second displayed smoke detector.
18. The system of claim 16 , wherein the computing device is configured to display data corresponding to the second smoke detector of the facility responsive to receiving the selection of the second displayed smoke detector.
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April 24, 2019
August 18, 2020
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